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Phototransformation of Amlodipine: Degradation Kinetics and Identification of Its Photoproducts

机译:氨氯地平的光转化:降解动力学及其光产物的鉴定

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摘要

Nowadays, monitoring focuses on the primary compounds and does not include degradation products formed during various biological and chemical processes. Transformation products may have the same effects to human health and the environment or sometimes they can be more toxic than the parent compound. Unfortunately, knowledge about the formation of degradation products is still limited, however, can be very important for the environmental risk assessment. Firstly, the photodegradation kinetic of amlodipine was investigated in two experimental conditions: during the exposure to solar radiation and during the exposure to the light emitted by the xenon lamp. In all cases degradation of amlodipine followed a pseudo-first-order kinetics. In the next step, identification of transformation products of amlodipine formed during the exposure to xenon lamp irradiation was performed using ultra high performance liquid chromatography quadrupole time-of-flight mass spectrometry (UHPLC-QTOF-MS). As a result sixteen photoproducts were identified, their structures were elucidated and ultimately the transformation pathway was proposed. Fifteen compounds (out of 16 photoproducts) were newly identified and reported here for the first time; some of those compounds were formed from the first photoproduct, amlodipine pyridine derivative. Several analytes were formed only in acidic or basic conditions. Furthermore, the occurrence of amlodipine and its identified degradation products was investigated in environmental waters. Only one out of 16 compounds was found in wastewater effluent. The possibility of the sorption of examined analytes to sewage sludge particles was discussed based on QSAR.
机译:如今,监测主要集中在主要化合物上,不包括在各种生物和化学过程中形成的降解产物。转化产物可能对人类健康和环境具有相同的影响,有时它们可​​能比母体化合物更具毒性。不幸的是,关于降解产物形成的知识仍然有限,但是对于环境风险评估可能非常重要。首先,在两个实验条件下研究了氨氯地平的光降解动力学:暴露于太阳辐射期间和暴露于氙灯发出的光期间。在所有情况下,氨氯地平的降解均遵循拟一级动力学。在下一步中,使用超高效液相色谱四极杆飞行时间质谱(UHPLC-QTOF-MS)进行氙灯照射过程中形成的氨氯地平转化产物的鉴定。结果鉴定出十六种光产物,阐明了它们的结构,并最终提出了转化途径。新鉴定了15种化合物(共16种照相产品),并首次在此报告。其中一些化合物是由第一种光产物氨氯地平吡啶衍生物形成的。几种分析物仅在酸性或碱性条件下形成。此外,在环境水中研究了氨氯地平及其确定的降解产物的发生。在废水中仅发现16种化合物中的一种。基于QSAR讨论了被检查分析物吸附到污水污泥颗粒上的可能性。

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